The naturally occurring isotope, 127I, has been measured by neutron activation, postirradiation extraction of 128I plus 127I (added carrier), and timed scintillation counting of aqueous solution utilizing Cerenkov radiation. With extrapolation of the counts to zero time (end of irradiation) and measurement of chemical recovery by weighing of precipitated AgI, there are about 300 cpm above background per nanogram of I, in the range of 0-30 ng. The precision for samples of NH4I is +/-2.6% coefficient of variation. The accuracy is good when standards, rat liver mitochondria, or thyroxine solutions are measured both by activation analysis and by a chemical method. The use of Cerenkov radiation simplifies sample preparation, eliminates the need ...
In an attempt to improve the radioisotope analyses made in our laboratory on the products of fission...
This review will concern itself with the radiochemical determination of inorganic isotopes by liquid...
129I, is a natural long-lived isotope, with a half-life of 15.7 million years, also artificially pro...
In order to investigate the ingestion of iodine by human body and to know its content in organs, ins...
In this communication, we shall attempt to demonstrate that thermal neutron activation analysis is a...
The advantages and disadvantages of various modes of neutron activation analysis (NAA), such as inst...
A procedure based on chemicsl separation techniques and activation anslysis was developed for the se...
More than 375 radioactive isotopes of the common chemical elements have been produced by nuclear bom...
Iodine-129 is a naturally generated isotope, but anthropogenic releases are the dominated source of ...
Iodine-125 is a radioisotopic impurity "always" present in iodine-123, produced by nuclear reactions...
A rapid and simple co-precipitation method for iodine separation from natural samples was developed ...
Includes bibliographical references (pages 67-[72])The introduction of isotopic tracers into biochem...
Iodine-129 (half-life:15.7 Ma) has been released into the environment by nuclear weapons testing and...
Iodine is a highly reactive element with a single natural and stable isotopic form (127I). In the bi...
This thesis describes a series of investigations of the quantitative aspects of iodine metabolism in...
In an attempt to improve the radioisotope analyses made in our laboratory on the products of fission...
This review will concern itself with the radiochemical determination of inorganic isotopes by liquid...
129I, is a natural long-lived isotope, with a half-life of 15.7 million years, also artificially pro...
In order to investigate the ingestion of iodine by human body and to know its content in organs, ins...
In this communication, we shall attempt to demonstrate that thermal neutron activation analysis is a...
The advantages and disadvantages of various modes of neutron activation analysis (NAA), such as inst...
A procedure based on chemicsl separation techniques and activation anslysis was developed for the se...
More than 375 radioactive isotopes of the common chemical elements have been produced by nuclear bom...
Iodine-129 is a naturally generated isotope, but anthropogenic releases are the dominated source of ...
Iodine-125 is a radioisotopic impurity "always" present in iodine-123, produced by nuclear reactions...
A rapid and simple co-precipitation method for iodine separation from natural samples was developed ...
Includes bibliographical references (pages 67-[72])The introduction of isotopic tracers into biochem...
Iodine-129 (half-life:15.7 Ma) has been released into the environment by nuclear weapons testing and...
Iodine is a highly reactive element with a single natural and stable isotopic form (127I). In the bi...
This thesis describes a series of investigations of the quantitative aspects of iodine metabolism in...
In an attempt to improve the radioisotope analyses made in our laboratory on the products of fission...
This review will concern itself with the radiochemical determination of inorganic isotopes by liquid...
129I, is a natural long-lived isotope, with a half-life of 15.7 million years, also artificially pro...